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    • 3. 发明授权
    • Flat panel detector
    • 平板检测器
    • US08669528B2
    • 2014-03-11
    • US13699447
    • 2011-03-15
    • Keiko ItayaTakehiko Shoji
    • Keiko ItayaTakehiko Shoji
    • G01T1/20
    • G01T1/2018A61B6/4208A61B6/4233A61B6/4488
    • A flat panel radiation detector is disclosed, comprising a scintillator panel provided on a support with a phosphor layer comprising columnar crystals and a protective layer sequentially in this order, and the scintillator panel being coupled with a planar light receiving element having plural picture elements which are arranged two-dimensionally, in which the difference between to average void fraction of an edge portion of the phosphor layer and the average void fraction of a base portion is not less than 5% and not more than 25%, and the void fraction decreases from the base portion to the edge portion. There is provided a flat panel radiation detector with a phosphor layer which exhibits enhanced physical resistance to shock and is superior in sharpness and emission efficiency.
    • 公开了一种平板辐射检测器,其包括闪烁体面板,该闪烁体面板设置在具有包括柱状晶体的荧光体层和保护层的支撑体上,并且闪烁体面板与具有多个图像元素的平面光接收元件耦合, 二维布置,其中荧光体层的边缘部分的平均孔隙率与基部的平均空隙率之间的差异不小于5%且不大于25%,并且空隙率从 基部到边缘部分。 提供了一种具有荧光体层的平板辐射检测器,其具有增强的物理抗冲击性,并且具有优异的清晰度和发射效率。
    • 4. 发明申请
    • RADIATION IMAGE DETECTING APPARATUS
    • 辐射图像检测装置
    • US20110121185A1
    • 2011-05-26
    • US13055001
    • 2009-02-26
    • Yoko HiraiTakehiko ShojiTakafumi Yanagita
    • Yoko HiraiTakehiko ShojiTakafumi Yanagita
    • G01T1/20
    • G01T1/202
    • There is disclosed a radiation image detecting apparatus which has achieved enhanced moisture resistance of a scintillator and enhanced image quality such as sharpness of a radiation image. The radiation image detecting apparatus is provided with a scintillator panel comprising a phosphor layer on a substrate and a photoelectric conversion panel, in which the scintillator panel is held between the photoelectric conversion panel and an opposed base material, and the periphery of the photoelectric conversion panel adheres to the periphery of the opposed base material with an adhesive, and pressure of a gas in the space between the photoelectric conversion panel and the opposed base material being lower than an atmospheric pressure.
    • 公开了一种辐射图像检测装置,其实现了闪烁体的增强的耐湿性和增强的图像质量,例如辐射图像的清晰度。 放射线图像检测装置具有:闪烁体面板,其包括基板上的荧光体层和光电转换面板,其中,所述闪烁体面板保持在所述光电转换面板和相对的基材之间,所述光电转换面板的周围 用粘合剂粘附在相对的基材的周围,并且光电转换面板和相对的基材之间的空间中的气体的压力低于大气压。
    • 5. 发明授权
    • Radiation image conversion panel and preparation method thereof
    • 辐射影像转换面板及其制备方法
    • US07601385B2
    • 2009-10-13
    • US11108740
    • 2005-04-19
    • Osamu MorikawaTakehiko ShojiShinji Kudo
    • Osamu MorikawaTakehiko ShojiShinji Kudo
    • B05D5/06
    • G21K4/00C09K11/7733
    • It is an object to provide a radiation image conversion panel exhibiting excellent properties in luminance and sharpness, and a preparation method thereof. Provided also is a drastically increased amount of stimulated luminescence of a post-manufacture radiation image conversion panel. Disclosed is a method for manufacturing a radiation image conversion panel in which a stimulable phosphor layer having a thickness of not less than 50 μm is formed on a support vapor deposition and then is heat-treated, wherein a ratio of transmittance T/T0 (T represents transmittance after heat-treating, and T0 before heat-treating) at a stimulated luminescence wavelength of the stimulable phosphor is 0.5≦T/T0≦10. Also disclosed is a method for manufacturing a radiation image conversion panel via conducting a process of soaking in a halogenated solvent, as well as a process of heating a phosphor panel possessing a stimulable phosphor layer.
    • 本发明的目的是提供一种显示出优异的亮度和锐度特性的放射线图像转换面板及其制备方法。 还提供了后制造辐射图像转换面板的受激发光量的显着增加的量。 公开了一种辐射图像转换面板的制造方法,其中在载体气相沉积上形成厚度不小于50μm的可激发​​荧光体层,然后进行热处理,其中透射率T / T0(T 表示在可刺激荧光体的受激发光波长下的热处理后的透射率,热处理前的T0)为0.5 <= T / T0 <= 10。 还公开了通过进行浸渍在卤化溶剂中的工序来制造放射线图像转换面板的方法,以及加热具有可刺激荧光体层的荧光体面板的方法。